DocumentCode :
770047
Title :
Structural integrity monitoring of steam generator tubing using transient acoustic signal analysis
Author :
Lu, Baofu ; Upadhyaya, Belle R. ; Perez, Rafael B.
Author_Institution :
Nucl. Eng. Dept., Univ. of Tennessee, Knoxville, TN, USA
Volume :
52
Issue :
1
fYear :
2005
Firstpage :
484
Lastpage :
493
Abstract :
The integrity diagnosis of tubular structures is studied in this research using guided acoustic waves. A smart sensor array is deployed to activate and collect Lamb wave signals that propagate along metallic tubes. Several advanced techniques have been explored to extract representative features from acoustic time series. Among them, the Hilbert-Huang Transform (HHT) is a recently developed technique for nonlinear nonstationary signal processing. A moving window is introduced to generate the local peak information from transient series, and a zooming window algorithm is developed to localize the structural flaws. The extracted features using moving windows are utilized for classifying structural defects in brass tubes. An experimental piezo-transducer system has been developed for testing several types of flaws in brass tubes in air and in water, and to demonstrate the implementation of HHT for flaw detection, localization, and classification. The techniques are also shown to be effective under background/process noise. This approach has the potential of on-line integrity monitoring of tubes in steam generators, boilers, and heat exchangers, used in process and power plants.
Keywords :
fission reactor materials; fission reactor monitoring; fission reactor theory; flaw detection; heat exchangers; nuclear engineering computing; nuclear power stations; nuclear reactor steam generators; surface acoustic wave signal processing; time series; transforms; ultrasonic materials testing; Hilbert-Huang Transform; Lamb wave signals; acoustic time series; brass tubes; flaw detection; guided acoustic waves; heat exchangers; integrity diagnosis; metallic tubes; moving window; noise; nonlinear nonstationary signal processing; piezotransducer system; power plants; sensor array; steam boilers; steam generator tubing; structural defects; structural flaws; structural integrity monitoring; transient acoustic signal analysis; transient series; tubular structures; zooming window algorithm; Acoustic waves; Data mining; Feature extraction; Monitoring; Power generation; Sensor arrays; Signal analysis; Signal generators; Signal processing algorithms; Transient analysis; Acoustic signals; Hilbert–Huang transform; piezo-transducers; tube integrity;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2004.843121
Filename :
1417195
Link To Document :
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